Toyota`s A750E - Bluegrass Today

Transcription

Toyota`s A750E - Bluegrass Today
STREET SMART
Toyota’s A750E
Neck Breaking Engagement
by Mike Brown
members.atra.com
www.atra.com
T
oyota’s A750E has been on
the road for eight years now
and they’re racking up a lot
of miles. As those miles add up, new
problems are bound to show up.
The most common complaint we
hear on the ATRA HotLine about this
transmission is it falls out of gear when
coming to a stop, then slams back into
gear, sometimes so hard that it feels
like someone has rear-ended you.
The unit falls out of gear because
of low line pressure caused by a faulty
SLT solenoid. The computer sees the
problem and ramps the pressure up to
maximum to overcome it, causing the
unit to slam back into gear.
In virtually every case this condition is caused by a worn out line pressure control solenoid. Toyota calls it
the SLT solenoid. The solenoid is fine
electrically; the problem is wear in the
mechanical components of the solenoid. In most cases the system doesn’t
even set a code.
The A750E uses four pressure
control solenoids: the SL1 and SL2
solenoids provide clutch control, the
SLU is for lockup control, and the SLT
controls line pressure (figure 1).
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ID
Solenoid Name
Parts Catalog Description
S1
Shift Solenoid A
S2
Shift Solenoid B
3-Way Transmission Solenoid
Transmission Solenoid 3
SR
Shift Solenoid E
3-Way Transmission Solenoid 2
SL1
Pressure Control Solenoid A
Clutch Control Solenoid 1
SL2
Pressure Control Solenoid B
Clutch Control Solenoid 2
SLT
Pressure Control Solenoid D
Line Pressure Control Solenoid
SLU
TCC Pressure Control Solenoid
Lockup Control Solenoid
Figure 1
GEARS December 2010
Here’s what Toyota has to say
about the SLT solenoid:
The linear solenoid (SLT) controls the transmission line pressure for
smooth transmission operation, based
on signals from the throttle position
sensor and the vehicle speed sensor.
The computer adjusts the SLT solenoid’s duty cycle to control line pressure coming from the primary regulator
valve.
Since the SLT solenoid controls
line pressure, it works harder and longer than any of the other solenoids.
Because of this, it’s also the solenoid
most likely to wear… and fail.
In fact, the SLT solenoid is becoming such a common failure on this unit
that it wouldn’t be unreasonable to
consider replacing it during every highmileage rebuild. The only problem is
cost: The SLT solenoid goes for about
$200, and is currently only available
from the dealer. There’s no aftermarket
replacement available right now.
So what can you do? Well, if you
experience this problem and don’t find
any other likely cause for it, replace the
GEARS December 2010
Figure 2
SLT solenoid. And to prevent it from
happening after a rebuild, you may
want to replace the solenoid on any
high mileage rebuilds, even considering
the cost.
Have a problem replacing a $200
solenoid just “because it’s due”? The
answer is to have a solenoid tester. Test
the solenoid operation before you make
a decision about replacing it. For most
shops, a good solenoid tester is a musthave item these days.
Diagnostic Procedures
Of course, other conditions could
cause similar problems with the A750E
31
Toyota’s A750E Drops In and Out of Gear
transmission or its solenoids. So it’s
always worthwhile to check the computer system operation, to rule out other
conditions.
As usual, your first step in any
computer system diagnosis is to check
for diagnostic trouble codes. Toyota
has two codes for the SLT solenoid:
P2714 and P2716. P2714 is a solenoid
performance code; P2716 is an electrical code.
Code P2714: The computer monitors slip between the turbine and output shafts to determine gear ratio, and
compares that with line pressure and
the SLT solenoid signal to identify
problems in the system. It uses a 2-trip
detection logic to set a code in memory.
If code P2714 is in memory,
look for one of these conditions:
• SLT solenoid is stuck open or
closed
• A sticking valve in the valve body
Figure 3
A750E/F Line Pressure Specifications
Condition
D Position
R Position
Idling
53-59 psi
73-84 psi
Stall
196-212 psi
188-205 psi
Figure 4
32
GEARS December 2010
CT-GearsMag6Final-10'10:Layout 4 10/27/10 1:39 PM Page 1
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Toyota’s A750E Drops In and Out of Gear
Figure 5
The transmission is slipping
(clutch, brake, or gears)
Code P2716: The computer uses
a duty cycle signal to control the SLT
solenoid, which controls line pressure.
The computer creates its signal based
on the throttle position signal and the
engine power output.
The computer will set code P2716
if it detects an electrical problem in the
SLT solenoid circuit for one second.
This is a 1-trip detection logic.
If you have code P2716 in memory, look for one of these problems:
• An open or short in the SLT circuit
• A faulty SLT solenoid
• A faulty computer
•
SLT Circuit Test
Procedure
Disconnect the electrical connector
from the transmission (figure 2).
• Measure the resistance between terminals SLT+ and SLT–. Resistance
should be 5.5 ohms to 5.6 ohms
at 68ºF.
• Check for short to ground: Measure
the resistance between SLT+ to
body ground, and SLT– to body
ground. You should have no continuity (infinite ohms). Any continuity indicates a faulty solenoid.
If SLT solenoid resistance is good and
there are no shorts to ground:
• Reconnect the transmission electrical connector.
• Unplug the E6 connector from the
computer (figure 3).
• Check the resistance between ter•
34
properly at idle and wide open throttle,
Line pressure should
but won’t vary smoothly in the middle.
rise and drop evenly and
Fluid Type
smoothly. Sometimes a
One thing to keep in mind when
solenoid will appear to be working on an A750E is fluid type.
working properly at idle Toyota recommends genuine ATF WS
to reduce the drag and improve fuel
and wide open throttle,
economy. This ATF has reduced viscosbut won’t vary smoothly in ity in the practical operating temperature range (figure 5).
the middle.
minals SLT+ and SLT– Resistance
should be 5.5 ohms to 5.6 ohms at
68ºF. If the resistance is outside of
specs, look for a problem in the
wiring between the computer and
the transmission.
• Check for short to ground: Measure
the resistance between SLT+ to
body ground, and SLT– to body
ground. You should have no continuity (infinite ohms). Any continuity indicates a short to ground
between the computer and the
transmission.
• If resistance is good and there are
no shorts to ground, check power
and grounds to the computer.
• If you find no other problems,
replace the computer
Sometimes a code will take you
straight to the problem; other times you
won’t have a code at all. If that’s the
case, perform a hydraulic pressure test
(figure 4).
Line pressure should rise and drop
evenly and smoothly. Sometimes a
solenoid will appear to be working
At higher-fluid temperatures, the
viscosity is the same as Toyota ATF
T-IV, to ensure the transmission’s durability.
Always use genuine Toyota ATF
WS in the A750E transmission.
Memory Reset
After completing your diagnosis
and repair, always perform a memory
reset. This allows the computer to clear
the codes, and begin to relearn its
operating parameters. You’ll need to
use a compatible scan tool to reset
the memory; disconnecting the battery
won’t do it.
Once you’ve reset the memory,
take the car for a complete road test to
begin the computer relearn process.
Having the right information on
hand can make it easier to identify and
repair the customers’ problems before
they become your problems. And that’s
not just smart… it’s Street Smart!
GEARS December 2010
SUPPLIER
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